论文标题

WASP-47行星系统的黑暗行星

The Dark Planets of the WASP-47 Planetary System

论文作者

Kane, Stephen R., Fetherolf, Tara, Hill, Michelle L.

论文摘要

系外行星的发现证明了各种各样的行星系统架构。从行星形成和轨道动力学的演变的角度来看,紧凑型行星系统的人口特别有趣。另一个有趣的人群是怪异轨道上的巨型行星,因为这些行星可能具有涉及行星环形散射事件的动态历史。 WASP-47系统特别令人着迷,因为它结合了这两个人口统计学,在系统可居住区内的怪异轨道上既有紧凑的行星轨道,又有一个巨大的行星。在这里,我们从大气检测和表征的角度提供了WASP-47系统的分析。我们讨论了系统体系结构,并有可能进行额外的长周期行星。由于行星的综合效应,我们将预期的相变为系统轨道相的函数。我们介绍了从K2任务中对WASP-47的精度光度法进行分析,并在每个行星上逐步分析。该分析排除了两个内部行星的相位特征的检测,从而对其反照率和大气特性产生了约束。我们的研究得出结论,WASP-47B是一个“黑暗”行星的一个例子,暂定的几何反照率为0.016,1 $σ$上限为0.17。 WASP-47E数据与广泛的反照率一致,但也显示出相对较低的反照率的早期证据。越来越多的黑暗,短期巨型行星为研究大气组成的依赖性低的理想样本提供了一个理想样本的框架。

Exoplanet discoveries have demonstrated a vast range of planetary system architectures. The demographic of compact planetary systems are especially interesting from the perspective of planetary formation and the evolution of orbital dynamics. Another interesting demographic is that of giant planets in eccentric orbits, since these planets have likely had a dynamical history involving planet-planet scattering events. The WASP-47 system is particularly fascinating since it combines these two demographics, having both compact planetary orbits and a giant planet on an eccentric orbit within the system Habitable Zone. Here we provide an analysis of the WASP-47 system from the perspective of atmospheric detection and characterization. We discuss the system architecture and the potential for additional long-period planets. We simulate expected phase variations as a function of planet orbital phase for the system due to the combined effect of the planets. We present analysis of precision photometry of WASP-47 from the K2 mission, phased on each of the planets. The analysis rules out the detection of phase signatures for the two inner-most planets, enabling constraints upon their albedos and atmospheric properties. Our study concludes that WASP-47b is an example of a "dark" planet with a tentative geometric albedo of 0.016 and a 1$σ$ upper limit of 0.17. The WASP-47e data are consistent with a broad range of albedos, but also show early evidence of having a relatively low albedo. The growing number of dark, short-period giant planets provide the framework of an ideal sample for studying low albedo dependence on atmospheric composition.

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